Lanthanides-Based Nanoparticles Conjugated with Rose Bengal for FRET-Mediated X-Ray-Induced PDT
Batoul Dhaini (LRGP, MCEMA), Jo\"el Daouk (CRAN), Herv\'e Schohn (CRAN), Philippe Arnoux (LRGP), Val\'erie Jouan-Hureaux (CRAN), Albert Moussaron (LRGP), Agn\`es Hagege (TechSep), Mathilde Achard (LCPM), Samir Acherar (LCPM), Tayssir Hamieh (MCEMA), C\'eline Frochot (LRGP)

TL;DR
This study develops lanthanide-based nanoparticles conjugated with Rose Bengal to optimize FRET-mediated X-ray-induced photodynamic therapy, demonstrating effective singlet oxygen production and significant cancer cell death.
Contribution
It introduces a novel nanoparticle system with enhanced FRET efficiency for X-PDT and demonstrates its potential for deep-tissue cancer treatment.
Findings
Achieved 52% cancer cell death in vitro.
Optimized FRET efficiency with spacer arm conjugation.
Demonstrated singlet oxygen production under X-ray irradiation.
Abstract
In order to find a good candidate for F{\"o}rster Resonance Energy Transfer (FRET)-mediated X-ray-induced photodynamic therapy (X-PDT) for the treatment of cancer, lanthanide (Ln)-based AGuIX nanoparticles (NPs) conjugated with Rose Bengal (RB) as a photosensitizer (PS) were synthesized. X-PDT overcomes the problem of the poor penetration of visible light into tissues, which limits the efficacy of PDT in the treatment of deep-seated tumors. It is essential to optimize FRET efficiency by maximizing the overlap integral between donor emission and acceptor absorption and lengthening the duration of the donor emission. In this study, we optimized energy transfer between a scintillator (Sc) as a donor and a PS as an acceptor. Terbium (Tb) and Gadolinium (Gd) as Scs and Rose RB as a PS were chosen. The study of energy transfer between Tb, Gd and RB in solution and chelated on AGuIX NPs proved…
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Taxonomy
TopicsNanoplatforms for cancer theranostics · Photodynamic Therapy Research Studies · Luminescence Properties of Advanced Materials
